Enterprise cooperation intelligent ecological management system based on industrial internet

By designing an intelligent ecological management system for enterprise collaboration based on the industrial Internet, and adopting a multi-tenant system and business applications, the problems of dispersion of information and poor interoperability between systems in online collaboration among enterprises are solved, and efficient and secure collaboration and data sharing are achieved.

CN119989377APending Publication Date: 2025-05-13SHANGHAI FANYISHANGHANG TECH CO LTD
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Patent Information

Application Number
CN202411927997.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

The existing online collaboration system between enterprises has the problem of information dispersion and difficulty in querying and traceability, and it is impossible to achieve real-time interoperability between information systems, resulting in untimely or inaccurate information, complex system design and information security risks.

Method used

Design an intelligent ecological management system for enterprise collaboration based on industrial Internet, adopting a multi-tenant system, business application, user role authority management system and collaborative enterprise management system, supporting cross-tenant use and data interoperability, and providing collaborative enterprise handshake, person business card exchange and business collaboration functions.

Benefits of technology

Through automated data docking, collaboration efficiency and quality are improved. Collaborative enterprises can control shared data, isolate data from different enterprises, ensure system stability and data security, and realize the rapid expansion of the system from serving one enterprise to serving multiple enterprises.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an enterprise cooperation intelligent ecological management system based on an industrial internet in the field of online cooperation between enterprises, and the system comprises: 1) a multi-tenant system: realizing data isolation between tenants in a form of one tenant for each enterprise, and supporting an upper application to provide differentiation functions for different tenants; according to the method, manual operation is avoided in a data automatic docking mode, so that the collaboration efficiency and quality are improved, the collaboration enterprises can manage and control shared data, data of different enterprises are isolated in a multi-tenant mode, and the collaboration efficiency and quality are improved. Therefore, the business application on the system can be quickly expanded from serving one enterprise to serving multiple upstream and downstream enterprises on the technical level; under the scene that the user cooperatively uses the application, the enterprise participating in the cooperation can control the account number of the user participating in the cooperation, and the security of the data is improved to a certain extent.
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Description

Technical Field

[0001] The present invention relates to the field of online collaboration between enterprises, and specifically to an enterprise collaboration intelligent ecological management system based on the industrial Internet. Background Art

[0002] In all aspects of industrial enterprises' business activities, there are a large number of scenarios that require coordination and communication with upstream and downstream parties such as suppliers, distributors or customers. Traditional information transmission is mainly through information channels such as telephone, email, social instant messaging software, and even the handover of paper documents. These methods have many inconveniences, such as scattered information that is difficult to query and trace, and the inability to communicate with the company's own information system in real time, resulting in untimely or inaccurate information. As Internet technology gradually attracts attention, more and more companies are beginning to try to transfer information transmission to their own information systems.

[0003] At present, in order to meet the needs of enterprises, the information system is generally designed in the following way: the system still takes one enterprise as the core user and opens a tenant for the enterprise (a tenant refers to the usage space allocated by the application to an organization). Under the tenant, the administrator of the enterprise opens accounts and corresponding function usage permissions for the collaborative users of the enterprise.

[0004] Compared with traditional collaborative communication methods, this information system with architectural design can improve the efficiency of inter-enterprise collaboration to a certain extent, but it still has certain technical limitations:

[0005] First, some upstream and downstream enterprises already have their own information systems. They only open accounts for upstream and downstream users, but the information between systems is not interoperable. This still cannot avoid manual entry of information and cannot achieve automatic real-time synchronization of information.

[0006] Second, as the understanding of informatization continues to deepen, the upstream and downstream of the enterprise may also have the need to use the system to manage their own business, and their needs may be different from the enterprise itself. Expanding and compatibility with the differentiated business and data permission requirements of multiple enterprises in the form of a single system and a single tenant will make the system design very complicated and pose a considerable challenge to the stability of the system;

[0007] Third, collaborating enterprises are unable to manage and control their own user accounts and business data, which poses certain information security risks.

[0008] Therefore, those skilled in the art provide an enterprise collaborative intelligent ecological management system based on the industrial Internet to solve the problems raised in the above background technology. Summary of the invention

[0009] The purpose of the present invention is to provide an enterprise collaborative intelligent ecological management system based on the industrial Internet to solve the problems raised in the above-mentioned background technology.

[0010] To achieve the above object, the present invention provides the following technical solutions:

[0011] An enterprise collaborative intelligent ecological management system based on the industrial Internet, 1. including:

[0012] 1) Multi-tenant system: Data isolation between tenants is achieved in the form of one tenant per enterprise, and upper-layer applications are supported to provide differentiated functions for different tenants;

[0013] 2) Business application: The application system on the system where the enterprise ultimately conducts business collaboration. After the enterprise subscribes to the business application and completes the handshake and application interconnection authorization with upstream and downstream enterprises, the application can support cross-tenant use of users, as well as cross-tenant and cross-application intercommunication of data;

[0014] 3) User role and authority management system: supports the enterprise to manage the accounts and role authority of its own enterprise users and collaborative enterprise users on the system;

[0015] 4) Collaborative enterprise management system: provided to enterprises on the system to maintain all collaborative relationships of the enterprise.

[0016] As a further solution of the present invention: the collaborative enterprise management system includes three functional modules: collaborative enterprise handshake, collaborator business card exchange, and business collaboration.

[0017] As a further solution of the present invention: the collaborative enterprise handshake function is used for an enterprise to establish a collaborative relationship with other enterprises on the system. Each pair of collaborative relationships on the system includes two enterprises, and each enterprise can establish multiple pairs of collaborative relationships. The process of establishing a collaborative relationship is: one enterprise initiates a collaborative invitation to the designated other enterprise, and the other enterprise accepts the invitation, then the collaborative relationship is established. The collaborative relationship has no directionality, that is, the collaborative relationship established after Enterprise A invites Enterprise B to collaborate and Enterprise B accepts the invitation is equivalent to the collaborative relationship established after Enterprise B invites Enterprise A to collaborate and Enterprise A accepts the invitation. The collaborative relationship can be terminated and established again after termination. Enterprises can set labels for collaborative enterprises, such as suppliers or distributors.

[0018] As a further solution of the present invention: the function of exchanging business cards of collaborators means that two collaborating companies can disclose the contact information of some of their users to each other, such as name, position, mobile phone number, etc., and disclose which contact information the companies can set up by themselves, and can also note the user's collaborative responsibilities and other information to the other company.

[0019] As a further solution of the present invention: the business collaboration function includes two modes: user collaboration and data collaboration. User collaboration means that users can use applications across tenants, and data collaboration means that data can be interoperable across tenants and applications.

[0020] Compared with the prior art, the present invention has the following beneficial effects:

[0021] 1. The present invention avoids manual operations by automatically connecting data, thereby improving collaboration efficiency and quality. At the same time, collaborative enterprises can manage and control their shared data and isolate data from different enterprises in the form of multi-tenants, thereby ensuring that business applications on the system can be quickly expanded from serving one enterprise to serving multiple upstream and downstream enterprises at the technical level.

[0022] 2. In the scenario where users use applications collaboratively, the present invention allows participating enterprises to manage and control the user accounts participating in the collaboration, thereby improving data security to a certain extent.

[0023] 3. The present invention uses cross-tenant data to avoid manual copying and pasting of information through automatic data docking, thereby improving collaboration efficiency and quality. At the same time, collaborative enterprises can manage and control their shared data. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a schematic diagram of the overall structure of the present invention; DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0026] See also Figure 1 In an embodiment of the present invention, an enterprise collaborative intelligent ecological management system based on the industrial Internet includes:

[0027] 1. Multi-tenant system: Data isolation between tenants is achieved in the form of one tenant per enterprise, and upper-layer applications are supported to provide differentiated functions for different tenants.

[0028] 2. Business application: The application system on the system where the enterprise ultimately conducts business collaboration. Multiple applications can be connected to the system. After the enterprise subscribes to the business application and completes the handshake and application interconnection authorization with upstream and downstream enterprises, the application can support cross-tenant use of users, as well as cross-tenant and cross-application intercommunication of data.

[0029] 3. User role and authority management system: supports the system to enable enterprises to manage the accounts and role authorities of their own users and users of collaborative enterprises.

[0030] 4. Collaborative enterprise management: It is provided to enterprises on the system to maintain all collaborative relationships of the enterprise. It includes three functions: collaborative enterprise handshake, collaborator business card exchange, and business collaboration.

[0031] Among them, the collaborative enterprise handshake is used by enterprises to establish collaborative relationships with other enterprises on the system. Each pair of collaborative relationships on the system includes two enterprises, and each enterprise can establish multiple pairs of collaborative relationships. The process of establishing a collaborative relationship is: one enterprise sends a collaborative invitation to the designated other enterprise, and the other enterprise accepts the invitation, and then the collaborative relationship is established. The collaborative relationship has no directionality, that is, the collaborative relationship established after enterprise A invites enterprise B to collaborate and enterprise B accepts the invitation is equivalent to the collaborative relationship established after enterprise B invites enterprise A to collaborate and enterprise A accepts the invitation. The collaborative relationship can be terminated and then established again. Enterprises can set labels for collaborative enterprises, such as suppliers or distributors.

[0032] Among them, the exchange of business cards of collaborators means that two collaborating companies can disclose the contact information of some of their users to each other, such as name, position, mobile phone number, etc. Companies can set which contact information to disclose, and can also note the user's collaborative responsibilities and other information to the other company.

[0033] Among them, business collaboration includes two modes: user collaboration and data collaboration. User collaboration means that users can use applications across tenants. Data collaboration means that data can be interoperable across tenants and applications.

[0034] The implementation processes of the two methods are as follows:

[0035] User collaboration implementation process

[0036] Assume that A and B are companies that need to collaborate, and Company A uses Application A. The way of transmitting collaboration information is: Application A opens some functions of Company A for users of Company B to use.

[0037] The implementation process at this time is:

[0038] 1) A application access system

[0039] 2) Company A and Company B each apply for a tenant on the system and open a system account for the users who need to collaborate.

[0040] 3) Company A subscribes to Application A, and Application A automatically opens a usage space for Company A.

[0041] 4) Company A and Company B establish a collaborative relationship through the system's "Collaborative Enterprise Handshake" function and (optionally) exchange business cards of collaborators.

[0042] 5) Company A authorizes part of the functions of Application A that it uses to Company B through the "User Collaboration" function under the "Business Collaboration" function of the system.

[0043] 6) Company B selects some of its own users and authorizes them to access Company A's usage space in Application A.

[0044] Compared with the traditional method where Company A completely controls the accounts of Company B's collaborators, this system has the following beneficial effects: Company B can control the accounts of its own collaborators, such as revoking permissions or changing collaborators.

[0045] Data Collaboration Implementation Process

[0046] Assume that A and B are companies that need to collaborate, Company A uses Application A, and Company B uses Application B. The way of collaborative information transmission is: Company A needs information from Company B, which is provided to Application A in real time by Application B through the data interface.

[0047] The implementation process at this time is:

[0048] 1) A application access system

[0049] 2) Company A and Company B each apply for a tenant on the system

[0050] 3) Company A subscribes to Application A, and Application A automatically opens a usage space for Company A.

[0051] 4) Company A and Company B establish a collaborative relationship through the system's "Collaborative Enterprise Handshake" function and (optionally) exchange business cards of collaborators.

[0052] 5) Application B encapsulates the data that Company B needs to share into an interface, and Company B registers the data interface to the system

[0053] 6) Company A uses the "Data Collaboration" function under the "Business Collaboration" function of the system to apply to call Company B's data interface through Application A.

[0054] 7) Company B approves the application.

[0055] 8) A application develops the logic of calling the data interface.

[0056] 9) Company A can view the collaborative data shared by Company B in real time in Application A.

[0057] It should be noted that A and B here can be different applications or the same application.

[0058] Compared with the manual copy and paste method of information, this system has the following beneficial effects: it avoids manual operation through automatic data connection, thereby improving the efficiency and quality of collaboration, while collaborating companies can manage and control their shared data.

[0059] The data of different enterprises are isolated in the form of multi-tenancy, thus ensuring that the business applications on the system can be quickly expanded from serving one enterprise to serving multiple upstream and downstream enterprises at the technical level. In the scenario where users use applications collaboratively, the participating enterprises can manage and control the user accounts of their participating users, which improves the security of data to a certain extent. The use of data across tenants by applications can avoid manual copying and pasting of information through automatic data docking, thereby improving the efficiency and quality of collaboration. At the same time, the collaborating enterprises can manage and control their shared data.

[0060] In this embodiment, based on the online collaborative cloud platform for industrial application developers, the application market provided by the industrial Internet is used as a carrier to deeply integrate software service providers specializing in Internet, big data, artificial intelligence and other technologies with industrial scenarios in the real economy. Small and medium-sized industrial enterprises with relatively weak IT capabilities can find industrial software suitable for their actual business needs in the application market, and perform consistent account authority management on the platform, and terminal business users also have a consistent business operation experience.

[0061] The data communication platform based on the supply and demand relationship of the supply chain provides an application market for the industrial Internet. It is not only a technology, but also a new business ecological model. Through the parts demand management platform, enterprises can connect customer demands in the supply chain in both positive and negative directions to form a full-directional data flow in the supply chain. The original need to log in to the customer system one by one, or contact downstream suppliers by phone, email, WeChat and other point-to-point; enterprises are tired of dealing with supply and demand fluctuations, internal production and delivery plan adjustments and other information flows are completely opened up. It truly achieves lean management in the entire chain, and improves efficiency and reduces costs in the supply and demand transmission chain.

[0062] AI-based production scheduling platforms in the upstream and downstream production of the automotive industry often face three major problems: difficult control, difficult planning, and difficult execution, such as changes in planned series, changes in market demand, insufficient supplier capacity and material reserves, sporadic C2M orders, the factory's own equipment and capacity, and inventory backlogs.

[0063] The advanced scheduling system has multiple AI industry-related algorithms built in. It combines the calculation and deduction of multi-dimensional factors such as demand, inventory, supply chain transportation risks, supplier ratings, backlog of inventory, equipment capacity, etc. to provide a suggested plan or adjusted production simulation. It achieves the global and full-chain optimization by separating the optimal production plan from each end to the issuance of production instructions.

[0064] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. An enterprise collaborative intelligent ecological management system based on the industrial Internet, characterized by: include: 1) Multi-tenant system: Data isolation between tenants is achieved in the form of one tenant per enterprise, and upper-layer applications are supported to provide differentiated functions for different tenants; 2) Business application: The application system on the system where the enterprise ultimately conducts business collaboration. After the enterprise subscribes to the business application and completes the handshake and application interconnection authorization with upstream and downstream enterprises, the application can support cross-tenant use of users, as well as cross-tenant and cross-application intercommunication of data; 3) User role and authority management system: supports the enterprise to manage the accounts and role authority of its own enterprise users and collaborative enterprise users on the system; 4) Collaborative enterprise management system: provided to enterprises on the system to maintain all collaborative relationships of the enterprise.

2. According to claim 1, the enterprise collaborative intelligent ecological management system based on the industrial Internet is characterized by: The collaborative enterprise management system includes three functional modules: collaborative enterprise handshake, collaborator business card exchange, and business collaboration.

3. The enterprise collaborative intelligent ecological management system based on the industrial Internet according to claim 2 is characterized by: The collaborative enterprise handshake function is used to establish a collaborative relationship between an enterprise and other enterprises on the system. Each pair of collaborative relationships on the system includes two enterprises, and each enterprise can establish multiple pairs of collaborative relationships. The process of establishing a collaborative relationship is: one enterprise initiates a collaborative invitation to the designated other enterprise, and the other enterprise accepts the invitation, then the collaborative relationship is established. The collaborative relationship has no directionality, that is, the collaborative relationship established after Enterprise A invites Enterprise B to collaborate and Enterprise B accepts the invitation is equivalent to the collaborative relationship established after Enterprise B invites Enterprise A to collaborate and Enterprise A accepts the invitation. The collaborative relationship can be terminated and established again after termination. Enterprises can set labels for collaborative enterprises, such as suppliers or distributors.

4. The enterprise collaborative intelligent ecological management system based on the industrial Internet according to claim 2 is characterized by: The collaborator business card exchange function means that two collaborating companies can disclose the contact information of some of their users to each other, such as name, position, and mobile phone number. Companies can set up their own contact information and can note the user's collaborative responsibilities information to the other company.

5. The enterprise collaborative intelligent ecological management system based on industrial Internet according to claim 2 is characterized by: The business collaboration function includes two modes: user collaboration and data collaboration. User collaboration means that users can use applications across tenants, and data collaboration means that data can be interoperable across tenants and applications.

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